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首页> 外文期刊>Development >Cross-repressive interactions between Lrig3 and netrin 1 shape the architecture of the inner ear.
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Cross-repressive interactions between Lrig3 and netrin 1 shape the architecture of the inner ear.

机译:Lrig3和netrin 1之间的交叉抑制相互作用塑造了内耳的结构。

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The sense of balance depends on the intricate architecture of the inner ear, which contains three semicircular canals used to detect motion of the head in space. Changes in the shape of even one canal cause drastic behavioral deficits, highlighting the need to understand the cellular and molecular events that ensure perfect formation of this precise structure. During development, the canals are sculpted from pouches that grow out of a simple ball of epithelium, the otic vesicle. A key event is the fusion of two opposing epithelial walls in the center of each pouch, thereby creating a hollow canal. During the course of a gene trap mutagenesis screen to find new genes required for canal morphogenesis, we discovered that the Ig superfamily protein Lrig3 is necessary for lateral canal development. We show that this phenotype is due to ectopic expression of the axon guidance molecule netrin 1 (Ntn1), which regulates basal lamina integrity in the fusion plate. Through a series of genetic experiments, we showthat mutually antagonistic interactions between Lrig3 and Ntn1 create complementary expression domains that define the future shape of the lateral canal. Remarkably, removal of one copy of Ntn1 from Lrig3 mutants rescues both the circling behavior and the canal malformation. Thus, the Lrig3/Ntn1 feedback loop dictates when and where basement membrane breakdown occurs during canal development, revealing a new mechanism of complex tissue morphogenesis.
机译:平衡感取决于内耳的复杂结构,该结构包含三个半圆形的耳道,用于检测头部在空间中的运动。甚至一条运河的形状变化也会导致严重的行为缺陷,这突出表明需要了解确保这种精确结构完美形成的细胞和分子事件。在发育过程中,从小袋上雕刻出运河,这些小袋是从一个简单的上皮球(即囊泡)中长出来的。一个关键事件是每个小袋中心的两个相对的上皮壁融合在一起,从而形成一条空心管。在基因陷阱诱变筛选过程中,发现了运河形态发生所需的新基因,我们发现Ig超家族蛋白Lrig3对于横向运河的发展是必需的。我们显示此表型是由于轴突指导分子netrin 1(Ntn1)的异位表达,它在融合板上调节基底层完整性。通过一系列的遗传实验,我们表明Lrig3和Ntn1之间的相互拮抗相互作用创建了互补的表达域,这些表达域定义了侧管的未来形状。值得注意的是,从Lrig3突变体中删除一份Ntn1可以挽救周围的行为和管畸形。因此,Lrig3 / Ntn1反馈回路决定了在管发育过程中何时以及在何处发生基底膜破裂,从而揭示了复杂组织形态发生的新机制。

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